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Brain Advance Access originally published online on May 11, 2005
Brain 2005 128(7):1642-1648; doi:10.1093/brain/awh513
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© The Author (2005). Published by Oxford University Press on behalf of the Guarantors of Brain. All rights reserved. For Permissions, please email: journals.permissions@oupjournals.org

Pathophysiological heterogeneity of conduction blocks in multifocal motor neuropathy

Alberto Priori1, Barbara Bossi1, Gianluca Ardolino1,3, Laura Bertolasi2, Marinella Carpo1, Eduardo Nobile-Orazio1,3 and Sergio Barbieri1

1 Dipartimento di Scienze Neurologiche, Università degli Studi di Milano, IRCCS Ospedale Maggiore di Milano, Milan and 2 Dipartimento di Scienze Neurologiche e della Visione, Università degli Studi di Verona, Verona, Italy 3 Present address: Unità di Neurologia 2, Istituto Clinico Humanitas, via Manzoni, 20 Rozzano (MI), 20080 Italy

Correspondence to: Alberto Priori, MD PhD, Padiglione Ponti, Dipartimento di Scienze Neurologiche, Università di Milano, IRCCS Ospedale Maggiore Policlinico, Via F. Sforza 35, Milano, 20122 Italy E-mail: alberto.priori{at}unimi.it

The pathophysiological mechanisms responsible for conduction block in multifocal motor neuropathy (MMN) are still unclear. To clarify the physiological abnormalities at the site of the block, we tested the effects induced by polarizing direct currents on motor conduction along forearm nerves in 25 normal nerves (13 subjects), and at the site of conduction block in six nerves (five patients) with MMN. In healthy controls, whereas nerve depolarization failed to change the conditioned compound muscle action potential (CMAP), hyperpolarization elicited a significant, charge-dependent, decrease in the conditioned CMAP size. Hyperpolarization with 4 mC elicited CMAPs that were 86.76 ± 5.22% (mean ± SEM) of the control unconditioned response (P < 0.05). Analysis of individual MMN nerves showed that polarizing currents elicited markedly heterogeneous effects: depending on the nerve tested, depolarization or hyperpolarization in most cases significantly improved conduction along motor fibres across the conduction block. In three MMN nerves, pathophysiological abnormalities were consistent with a hyperpolarizing block, in two with a depolarizing block, and in one with a mixed block. Our observations indicate that the pathophysiological abnormalities at the site of conduction block in MMN may arise from depolarization or hyperpolarization, probably depending on the course of disease.

Key Words: polarization; conduction block; multifocal motor neuropathy

Abbreviations: CMAP = compound muscle action potential; DC = direct current; IVIg = intravenous immunoglobulin; MMN = multifocal motor neuropathy

Received November 24, 2004. Revised February 17, 2005. Accepted March 17, 2005.


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